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Monocyte recruitment by HLA IgG-activated endothelium: The relationship between IgG subclass and FcγRIIa polymorphisms

机译:HLA IgG激活的内皮细胞募集单核细胞:IgG亚类与FcγRIIa多态性之间的关系

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摘要

It is currently unclear which donor specific HLA antibodies confer the highest risk of antibody-mediated rejection (AMR) and allograft loss. In this study, we hypothesized that two distinct features (HLA IgG subclass and Fcγ receptor (FcγR) polymorphisms), which vary from patient to patient, influence the process of monocyte trafficking to and macrophage accumulation in the allograft during AMR in an interrelated fashion. Here, we investigated the contribution of human IgG subclass and FcγR polymorphisms in monocyte recruitment in vitro by primary human aortic endothelium activated with chimeric anti-HLA I human IgG1 and IgG2. Both subclasses triggered monocyte adhesion to endothelial cells, via a two-step process. First, HLA I crosslinking by antibodies stimulated upregulation of P-selectin on endothelium irrespective of IgG subclass. P-selectin-induced monocyte adhesion was enhanced by secondary interactions of IgG with FcγRs, which was highly dependent upon subclass. IgG1 was more potent than IgG2 through differential engagement of FcγRs. Monocytes homozygous for FcγRIIa-H131 adhered more readily to HLA antibody-activated endothelium compared with FcγRIIa-R131 homozygous. Finally, direct modification of HLA I antibodies with immunomodulatory enzymes EndoS and IdeS dampened recruitment by eliminating antibody-FcγR binding, an approach that may have clinical utility in reducing AMR and other forms of antibody-induced inflammation.
机译:目前尚不清楚哪种供体特异性HLA抗体赋予抗体介导的排斥(AMR)和同种异体移植物丧失的最高风险。在这项研究中,我们假设两个不同的特征(HLA IgG亚类和Fcγ受体(FcγR)多态性)因患者而异,以相互关联的方式影响同种异体移植物中单核细胞的运输和巨噬细胞积累的过程。在这里,我们调查了人类IgG亚类和FcγR多态性在体外的单核细胞募集中的作用,该过程是由嵌合抗HLA I人类IgG1和IgG2激活的初级人类主动脉内皮细胞。这两个亚类均通过两步过程触发了单核细胞与内皮细胞的粘附。首先,不管IgG亚类如何,通过抗体进行的HLA I交联刺激了内皮上P-选择蛋白的上调。 IgG与FcγR的次级相互作用增强了P-选择素诱导的单核细胞粘附,这高度依赖于亚类。通过FcγRs的不同结合,IgG1比IgG2更有效。与FcγRIIa-R131纯合子相比,FcγRIIa-H131纯合子单核细胞更容易粘附于HLA抗体激活的内皮。最后,用免疫调节酶EndoS和IdeS直接修饰HLA I抗体可通过消除抗体-FcγR结合来抑制募集,这种方法在减少AMR和其他形式的抗体诱导的炎症中可能具有临床效用。

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